arXiv · patt-sol/9706001
Amplitude Equations for Electrostatic Waves: multiple species
Abstract
The amplitude equation for an unstable electrostatic wave is analyzed using an expansion in the mode amplitude $A(t)$. In the limit of weak instability, i.e. $γ\to 0^+$ where $γ$ is the linear growth rate, the nonlinear coefficients are singular and their singularities predict the dependence of $A(t)$ on $γ$. Generically the scaling $|A(t)|=γ^{5/2}r(γt)$ as $γ\to 0^+$ is required to cancel the coefficient singularities to all orders. This result predicts the electric field scaling $|E_k|\simγ^{5/2}$ will hold universally for these instabilities (including beam-plasma and two-stream configurations) throughout the dynamical evolution and in the time-asymptotic state. In exceptional cases, such as infinitely massive ions, the coefficients are less singular and the more familiar trapping scaling $|E_k|\simγ^2$ is recovered.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
John David Crawford, Anandhan Jayaraman. 1997-06-10. Amplitude Equations for Electrostatic Waves: multiple species. https://doi.org/10.1063/1.532635
Cite the original work for its findings. Save a collection to share your selection of sources.